ECMA 145-1990 8mm WIDE MAGNETIC TAPE CARTRIDGE FOR INFORMATION INTERCHANGE - HELICAL SCAN RECORDING《信息交换用双方位角格式8mm宽盒式磁带 螺旋扫描记录法》.pdf
《ECMA 145-1990 8mm WIDE MAGNETIC TAPE CARTRIDGE FOR INFORMATION INTERCHANGE - HELICAL SCAN RECORDING《信息交换用双方位角格式8mm宽盒式磁带 螺旋扫描记录法》.pdf》由会员分享,可在线阅读,更多相关《ECMA 145-1990 8mm WIDE MAGNETIC TAPE CARTRIDGE FOR INFORMATION INTERCHANGE - HELICAL SCAN RECORDING《信息交换用双方位角格式8mm宽盒式磁带 螺旋扫描记录法》.pdf(74页珍藏版)》请在麦多课文档分享上搜索。
1、ECMA ECMA8345 90 3404593 0002432 3 - _- ECMA E UR O PEAN CO IIIPUTER MAN U FACTURE RS ASS OCIATIOH STANDARD ECMA-145 8mm WIDE MAGNETIC TAPE CARTRIDGE FOR INFORMATION INTERCHANGE - HELICAL SCAN RECORDING - December 1990 3404593 0002433 3 E - . BRIEF HISTORY ECMA have produced a series of ECMA Standar
2、ds for cassettes and cartridges containing magnetic tapes of different width and characteristics. ECMA-34 (1976) : ECMA-46 (1976) ECMA-79 (1985) : ECMA-98 (1985) : ECMA-120 (1987) : ECMA-139 (1990) : ECMA-146 (1990) : The first five of these media were designed for the digital recording of data for
3、storage and processing in data processing systems. In recent years, other magnetic media, originally developed for audio and video applications, have been considered for use in data processing applications for storage as well as for information interchange. The recording method known as helical scan
4、 recording, together with new types of magnetic tapes, allows to achieve capacities of more than 1 gigabyte of user data. Upon request of Committee ISOIIECIJTClISCll Standard ECMA-139 and ECMA-146 have been contributed to ISOIIEC for adoption as International Standards under the fast-track procedure
5、. The present Standard is the first standard for 8 mm wide magnetic tape cartridge. Also upon request of ISO/IEC/JTCl/SCll, this ECMA Standard has been contributed to IS0 for adoption as an International Standard under the fast-track procedure. Data Interchange on 3,81 mm Magnetic Tape Cassette (32
6、bpmm, Phase Encoded) Data Interchange on 6,30 mm Magnetic Tape Cartridge (63 bpmm, Phase Encoded) Data Interchange on 6,30 mm Magnetic tape Cartridge Using IMFM Recording at 252 ftpmm Data Interchange on 6,30 mm Magnetic Tape Cartridge Using NRZ1 Recording at 394 ftpmm - Streaming Mode Data Intercha
7、nge on 12,7 mm 18-Track Magnetic Tape cartridges 3,81 mm Wide Magnetic Tape Cartridge for Information Interchange - Helical Scan recording - DDS Format 3,81 mm Wide Magnetic Tape Cartridge for Information Interchange - Helical Scan recording - DATADAT Format Adopted as an ECMA Standard by the Genera
8、l Assembly of 13th December 1990. ECMA ECMAxL45 90 m 3404593 0002434 5 m -i- SECTION I - GENERAL 1. SCOPE 2. CONFORMANCE 3. REFERENCES 4. DEFINITIONS TABLE OF CONTENTS 4.1 4.2 4.3 4.4 4.5 4.6 4.7 4.8 4.9 4.10 4.1 1 4.12 4.13 4.14 4.15 4.16 4.17 4.18 4.19 4.20 4.2 1 4.22 4.23 4.24 AC Erase Average Si
9、gnal Amplitude Azimuth Back Surface Bit Cell Byte Cartridge Cyclic Redundancy Check (CRC) Character Error Correcting Code (ECC) Flux Transition Position Flux Transition Spacing Magnetic Tape Master Standard Reference Tape Physical Beginning of Tape (PBOT) Physical End of Tape (PEOT) Physical Recordi
10、ng Density Secondary Reference Amplitude Secondary Reference Field Secondary Standard Reference Tape Standard Reference Current (Ir) Test Record i ng Cur rent Tone Track Typical Field 5. ENVIRONMENT AND SAFETY 5.1 Testing Environment 5.2 Operating Environment 5.3 Storage Environment 5.4 Transportati
11、on 5.5 Safety Page 1 1 1 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 2 2 3 3 3 3 3 ECHA ECMA*145 90 E 3404593 0002415 7 ., 5.6 Flammability SECTION II - REQUIREMENTS FOR THE CASE 6. DIMENSIONAL AND MECHANICAL CHARACTERISTICS OF THE CASE 6.1 6.2 6.3 6.4 6.5 6.6 6.7 6.8 6.9 6.10 6.11 6.12 6.13 6.14 6.15 6
12、.16 6.17 6.18 6.19 6.20 6.21 General Overall Dimension ( figure 3 ) Holding Areas Cartridge Insertion Window ( figure 1 ) Loading Grips ( figure 3 ) Label Areas ( figure 3 ) Datum Areas and Datum Holes ( figures 4, 5 and 6 ) Support Areas Recognition Holes ( figures 5, 6 and 7 ) Write-inhibit Hole (
13、 figures 6 and 7 ) Pre-positioning Surfaces ( figures 3 and 5 ) Cartridge Lid ( figures 3 and 8 ) Cartridge Reel Lock ( figure 11 ) Reel Access Holes ( figure 5 ) Interface between the Reels and the Drive Spindles ( figures 17 and 18 ) Light Path ( figures 5, 7, 15 and 16 ) Position of the tape in t
14、he case ( figure 16 ) Tape Path Zone ( figures 16 and 17 ) Tape Access Cavity ( figure 5 ) Tape Access Cavity Clearance Requirements ( figure 19 ) SECTION III - REQUIREMENTS FOR THE UNRECORDED TAPE 7. MECHANICAL, PHYSICAL AND DIMENSIONAL CHARACTERISTICS OF THE TAPE 7.1 7.2 7.3 7.4 7.5 7.6 7.7 7.8 7.
15、9 7.10 Materials Tape Length 7.2.1 Magnetic Tape 7.2.2 Leader and Trailer Tapes 7.2.3 Splicing Tape Width Discontinuities Thickness 7.5.1 Thickness of Magnetic Tape 7.5.2 Longitudinal Curvatu re Cupping Coating Adhesion Layer-to-Layer Adhesion Tensile Strength Thickness of Leader and Trailer Tape 4
16、4 4 4 5 5 5 6 6 6 7 8 8 9 9 IO 11 12 12 13 13 14 14 14 32 32 32 32 32 32 32 32 32 32 32 32 32 33 33 34 34 ECMA ECMA*345 90 3404593 O002436 9 m - - 7.10.1 Breaking Strength 7.10.2 Yield Strength 7.1 1 Residual Elongation 7.12 7.13 Tape Winding 7.14 Light Transmittance of Tape Electrical Resistance of
17、 the Surface 8. MAGNETIC RECORDING PERFORMANCE 8.1 Test Conditions 8.2 Typical Field 8.3 Signal Amplitude 8.4 Resolution 8.5 Narrow-band Signal-to-noise Ratio 8.5.1 Requirement 8.5.2 Proced Ure 8.6 Ease of Erasure 8.7 Tape Quality 8.7.1 Missing Pulses 8.7.2 Missing Pulse Zone 8.8 Inhibitor Tape 9. F
18、ORMAT 9.1 General 9.2 Infoimation Matrix 9.2.1 Loading of the information Matrix 10. METHOD OF RECORDING 10.1 Physical Recording Density 10.1.1 10.1.2 10.1.3 Rate of Change Long-Term Average Bit Cell Length Short-Term Average Bit Cell Length 10.2 Bit Shift 10.3 Read Signal Amplitudes 10.3.1 Amplitud
19、e of Data Signals 10.3.2 Amplitude of Servo Signals 10.3.3 Signal Amplitude on an Analogue Tape Mark Track 10.4 Erasure 11. TRACK GEOMETRY 11.1 Track Positions 11.2.1 Average Track Pitch 1 1.2.2 Adjacent Track Pitch 35 35 35 35 36 36 36 36 37 37 37 37 37 37 37 37 37 38 38 38 38 38 39 43 43 43 43 43
20、44 44 44 44 44 44 45 45 46 46 - iv - ., 11.3 Track Width 11.4 Track Angle 11.5 Linearity of Track Edges 11.6 Azimuth 12. FORMAT OF AN INFORMATION TRACK 12. I Channel Bit 12.2 Information Segment 12.2.1 Bit Synchronization Field 12.2.2 Information Segment Number 12.2.3 Information Segment field 12.3
21、Information Block 12.4 Information Zone 12.5 Servo Zone 12.6 Information Tracks 12.6.1 Format ID Track 12.6.2 Data Track 12.6.3 Tape Mark Track 12.6.4 Splice Track 13. TAPE MARK 13.1 Description 13.2 Long Tape Mark 13.3 Short Tape Mark 13.3.1 Normal Short Tape Mark 13.3.2 Alternative Short Tape Mark
22、 14. ID INFORMATION 14.1 14.2 14.3 14.4 14.5 14.6 14.7 14.8 Column 00, Row O0 14.1.1 14.1.3 14.1.4 Column 00, Row O1 Column 00, Row 02 Column 00, Row 03 Column 00, Row 04 Column 00, Rows 05,06 14.6.1 Row 05 14.6.2 Row 06 Column 00, Row 07 Column 00, Rows 08,09,10 14.8.1 14.8.2 Block Type - Data Bloc
23、k Block Type - Format ID Block Type - Pad Block Block Type - Data Block Block Type - non-Data Block 46 46 46 46 46 46 46 47 47 47 48 49 49 50 50 51 51 51 51 51 52 52 52 52 52 52 52 53 53 53 53 53 53 53 53 53 53 54 54 54 -v- 14.9 Column 00, Rows 11,12,13 15. REWRITTEN INFORMATION BLOCKS 16. PHYSICAL
24、TAPE FORMAT 16.1 initial Erased Area 16.2 16.3 16.4 Post Data Erased Area Logical Beginning of Tape Area (LBOT Area) Usable Area of the Tape APPENDIX A - MEASUREMENT OF LIGHT TRANSMITTANCE OF TAPE AND LEADERS APPENDIX B - MEASUREMENT OF BIT SHIFT APPENDIX C - REPRESENTATION OF 8-BIT BYTES BY IO-BIT
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